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Pathogen Source Identification and Characterization by Designed Sampling

机译:通过设计采样的病原体源识别和表征

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Nine sampling events, in dry and wet weather, were executed in a combined sewer overflow impacted stretch of the lower Passaic River at Paterson, New Jersey. Multiple water quality parameters were measured at 18 sites which included in-stream sites and representative locations at combined sewer outfalls, stormwater outfalls, and tributaries. The data was analyzed using ttests and simple linear regression. Analysis of dry weather samples indicated all tributaries in the study area act to increase in-stream bacteria concentrations. Bacteria concentrations were higher at 6 AM than at 10 AM or 1 PM, possibly due to increased bacteria decay due to sunlight and temperature or unknown sources. Total suspended solids concentration was highly correlated with bacteria concentration at shallow sites, suggesting the possibility of sediment resuspension as a possible source at these sites. DO is a significant predictor variable at all sites except the upstream boundary suggesting sewage is a contributor.
机译:九个采样事件,在干燥和潮湿的天气中,在新泽西州帕特森下游河流的组合下水道溢出的影响。在18个地点测量多种水质参数,其中包含在流动的下水道出口,雨水排出物和支流中的流动位点和代表性地点。使用TTEST和简单的线性回归分析数据。干天气样品分析表明研究区中的所有支流都采取了增加流细菌浓度。细菌浓度在6m至10m或下午1点升高,可能是由于阳光和温度或未知来源增加的细菌腐烂。总悬浮的固体浓度与浅位点的细菌浓度高度相关,表明在这些位点的可能源沉积物重悬浮的可能性。除上游边界建议污水是一个贡献者之外,在所有网站上都是一个重要的预测因素。

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